Static and Dynamic Performance Limitations for High Speed D/A Converters

Static and Dynamic Performance Limitations for High Speed D/A Converters discusses the design and implementation of high speed current-steering CMOS digital-to-analog converters. Starting from the definition of the basic specifications for a D/A converter, the elements determining the static and dyn...

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Bibliographic Details
Main Authors: van den Bosch, Anne, Steyaert, Michiel (Author), Sansen, Willy M.C. (Author)
Format: eBook
Language:English
Published: New York, NY Springer US 2004, 2004
Edition:1st ed. 2004
Series:The Springer International Series in Engineering and Computer Science
Subjects:
Online Access:
Collection: Springer Book Archives -2004 - Collection details see MPG.ReNa
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245 0 0 |a Static and Dynamic Performance Limitations for High Speed D/A Converters  |h Elektronische Ressource  |c by Anne van den Bosch, Michiel Steyaert, Willy M.C. Sansen 
250 |a 1st ed. 2004 
260 |a New York, NY  |b Springer US  |c 2004, 2004 
300 |a XVI, 218 p  |b online resource 
505 0 |a 1 Introduction -- 2 The D/A Converter: Functionality and Specifications -- 3 CMOS D/A Converter Architectures -- 4 Static Behaviour of Current Steering D/A converters -- 5 Dynamic Behaviour of Current Steering D/A Converters -- 6 A Design Methodology for High Performance CMOS Current Steering D/A Converters -- 7 Realisations -- 8 Transistor Mismatch: Evolution and Relevance -- Appendix 1 -- Appendix 2 
653 |a Electrical engineering 
653 |a Electronic circuits 
653 |a Electrical Engineering 
653 |a Circuits and Systems 
700 1 |a Steyaert, Michiel  |e [author] 
700 1 |a Sansen, Willy M.C.  |e [author] 
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490 0 |a The Springer International Series in Engineering and Computer Science 
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520 |a Static and Dynamic Performance Limitations for High Speed D/A Converters discusses the design and implementation of high speed current-steering CMOS digital-to-analog converters. Starting from the definition of the basic specifications for a D/A converter, the elements determining the static and dynamic performance are identified. Different guidelines based on scientific derivations are suggested to optimize this performance. Furthermore, a new closed formula has been derived to account for the influence of the transistor mismatch on the achievable resolution of the current-steering D/A converter. To allow a thorough understanding of the dynamic behavior, a new factor has been introduced. Moreover, the frequency dependency of the output impedance introduces harmonic distortion components which can limit the maximum attainable spurious free dynamic range. Finally, the last part of the book gives an overview on different existing transistor mismatch models and the link with the static performance of the D/A converter